Gauzel'man V E, Glezer V D, Shcherbach T A, Virsu V
Fiziol Zh SSSR Im I M Sechenova. 1979 Feb;65(2):238-48.
Responses of complex receptive fields of the cat straitum to moving sinusoidal grating were studied. Stimulation of the receptive field with some spatial frequencies suppresses spontaneous discharges. Responses of the receptive field corroborate previously made predictions that the spatial--frequency characteristics of the receptive field should have the main and the secondary maximums and negative areas in case the complex fields perform piece-wise Fourier--transformation of image. The changes of impulse frequency in field's response are predicted by comparing the changes of instantaneous spectrum of grating entering the field with spatial frequency characteristic of the field. The data evidence that the complex field is rather a spatial--frequency filter than a detector. Some complex fields reveal a lateral inhibitory area behind the field's nucleus in direction of stimulus movement. The complex fields with no lateral inhibitory areas seem to serve for piece Fourier--description of image, those with lateral areas--for picking out the countour between textures.
研究了猫纹状体复杂感受野对移动正弦光栅的反应。用某些空间频率刺激感受野会抑制自发放电。感受野的反应证实了先前的预测,即如果复杂感受野对图像进行分段傅里叶变换,那么感受野的空间频率特性应该有主要和次要最大值以及负区。通过将进入感受野的光栅的瞬时频谱变化与感受野的空间频率特性进行比较,预测了感受野反应中脉冲频率的变化。数据表明,复杂感受野更像是一个空间频率滤波器而不是一个探测器。一些复杂感受野在刺激移动方向上的感受野中心后方显示出一个侧向抑制区。没有侧向抑制区的复杂感受野似乎用于图像的分段傅里叶描述,有侧向区域的则用于挑选纹理之间的轮廓。